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May 4, 2026Advances in Technology Innovation0 citationsOpen Access

Seismic Response Comparison of Fixed-Base and Base-Isolated 8-Story Buildings with Frame and Shear Wall Systems

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INIlham NurhudaDiponegoro UniversityWPWindu PartonoDiponegoro UniversityRORico Fernando Onggowarsito

Key Points

  • This research aims to evaluate the seismic response of various structural systems in 8-story buildings and assess the effectiveness of spectral acceleration as a predictive measure.
  • Analyzed four configurations: fixed-base moment-resisting frame, fixed-base dual system, base-isolated moment-resisting frame, base-isolated dual system with shear walls.
  • Conducted nonlinear time-history analyses using 11 ground motion records scaled for site conditions.
  • Examined maximum lateral displacement, interstory drift, floor acceleration, and base shear as key parameters.
  • The base-isolated dual system displayed superior performance across all examined response parameters.
  • Spectral acceleration is a reasonable predictor for floor acceleration in frame structures.
  • However, spectral acceleration tends to underestimate floor acceleration in dual systems with shear walls.

Abstract

This study investigates the effects of different lateral load-resisting systems on engineering demand parameters (EDPs) and evaluates the suitability of spectral acceleration (Sa) as an intensity measure for predicting their seismic response. Eight-story reinforced concrete buildings with four configurations—fixed-base moment-resisting frame, fixed-base dual system with shear walls, base-isolated moment-resisting frame, and base-isolated dual system with shear walls—were analyzed. The seismic responses are obtained through nonlinear time-history analyses using 11 ground motion records scaled to match the site conditions. Four key response parameters are examined: maximum lateral displacement, interstory drift, floor acceleration, and base shear. Overall, the base-isolated dual system exhibited the best performance across all response parameters. In addition, Sa can be reasonably used to estimate floor acceleration in frame structures. However, the use of Sa to estimate floor acceleration in dual systems with shear walls tends to underestimate the actual response.

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Cite This Study

Nurhuda et al. (2026) studied this question.

synapsesocial.com/papers/69f836aa3ed186a739980e1chttps://doi.org/10.46604/aiti.2026.16055
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